Electromagnetism
Current Electricity
MCQ (Single Correct Answer)
Moving Charges and Magnetism
MCQ (Single Correct Answer)
Magnetism and Matter
MCQ (Single Correct Answer)
Electromagnetic Induction
MCQ (Single Correct Answer)
Alternating Current
MCQ (Single Correct Answer)
Electromagnetic Waves
MCQ (Single Correct Answer)
Modern Physics
Dual Nature of Radiation
MCQ (Single Correct Answer)
Semiconductor Devices and Logic Gates
MCQ (Single Correct Answer)
Communication Systems
MCQ (Single Correct Answer)
1
COMEDK 2024 Afternoon Shift
MCQ (Single Correct Answer)
+1
-0

A charge of $$+1 \mathrm{C}$$ is moving with velocity $$\vec{V}=(2 \mathrm{i}+2 \mathrm{j}-\mathrm{k}) \mathrm{ms}^{-1}$$ through a region in which electric field $$\vec{E}=(\mathrm{i}+\mathrm{j}-3 \mathrm{k}) \quad \mathrm{NC}^{-1}$$ and magnetic field $$\vec{B}=(\mathrm{i}-2 \mathrm{j}+3 \mathrm{k}) \mathrm{T}$$ are present. The force experienced by the charge is

A
$$ (5 i+6 j-7 k) N $$
B
$$ (5 i-6 j-9 k) N $$
C
$$ (-5 i-6 j-7 k) N $$
D
$$ (-5 i+6 j+9 k) N $$
2
COMEDK 2024 Afternoon Shift
MCQ (Single Correct Answer)
+1
-0

To increase the current sensitivity of a moving coil galvanometer by $$25 \%$$, its resistance is increased so that the new resistance becomes twice its initial resistance. By what factor does the voltage sensitivity change?

A
Decreases by $$62.5 \%$$
B
Decreases by $$37.5 \%$$
C
Increases by $$37.5 \%$$
D
Increases by $$62.5 \%$$
3
COMEDK 2024 Morning Shift
MCQ (Single Correct Answer)
+1
-0

Current flows through uniform, square frames as shown in the figure. In which case is the magnetic field at the centre of the frame not zero?

COMEDK 2024 Morning Shift Physics - Moving Charges and Magnetism Question 7 English

A
A
B
D
C
C
D
B
4
COMEDK 2024 Morning Shift
MCQ (Single Correct Answer)
+1
-0

Two similar coils $A$ and $B$ of radius '$$r$$' and number of turns '$$N$$' each are placed concentrically with their planes perpendicular to each other. If I and $$2 \mathrm{I}$$ are the respective currents passing through the coils then the net magnetic induction at the centre of the coils will be:

A
$$ \sqrt{3}\left(\mu_0 \frac{\mathrm{NI}}{2 \mathrm{r}}\right) $$
B
$$ \sqrt{5}\left(\mu_0 \frac{\mathrm{NI}}{2 \mathrm{r}}\right) $$
C
$$ 5 \mu_0 \frac{\mathrm{NI}}{2 \mathrm{r}} $$
D
$$ 3 \mu_0 \frac{\mathrm{NI}}{\mathrm{r}} $$
COMEDK Subjects